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边缘皮质与腹侧纹状体之间的功能联系:海马下脚-伏隔核通路的生理学

A functional link between the limbic cortex and ventral striatum: physiology of the subiculum accumbens pathway.

作者信息

Lopes da Silva F H, Arnolds D E, Neijt H C

出版信息

Exp Brain Res. 1984;55(2):205-14. doi: 10.1007/BF00237271.

DOI:10.1007/BF00237271
PMID:6745361
Abstract

Parallel electrophysiological and anatomical tracing studies on the projections from the hippocampal formation to the ventral striatum in the cat, were carried out with the aim of defining the nature and organization of the motor interfaces of the limbic cortex. In this context the main pathway was found to be that from the subiculum to the N. Accumbens; electrophysiological characteristics of this pathway are reported in the present study. This well organized pathway is primarily of an excitatory nature and consists of slow conducting fibers (1-2 ms-1). Three types of response patterns of single Accumbens units to subicular simulation were found: units which responded with a burst of action potentials (the majority); units which responded with iterative bursting; units responding primarily with an inhibition of firing. Often the primary excitatory response was followed by a decrease in firing rate. Analysis of Evoked Potentials indicate that the subicular inputs induce a monopolar positive field within the N. Accumbens; in combination with the evidence obtained from current source density (CSD) analysis these data suggest the following activation model: subicular inputs evoke depolarization of synapses lying peripherally in the dendrites of stellate neurons provoking peripheral sinks which form a concentric shell around sources at and in the neighbourhood of the cell bodies. In addition to the subiculum-Accumbens pathway evidence was also obtained for an excitatory input from the Entorhinal cortex to the N. Accumbens. Furthermore, an excitatory pathway from the prepyriform cortex to the olfactory tubercle was also electrophysiologically identified.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对猫海马结构至腹侧纹状体的投射进行了平行的电生理和解剖追踪研究,目的是确定边缘皮质运动接口的性质和组织。在这一背景下,发现主要通路是从海马下脚到伏隔核;本研究报告了该通路的电生理特征。这条组织良好的通路主要具有兴奋性,由传导速度较慢的纤维(1 - 2米/秒)组成。发现伏隔核单个神经元对海马下脚刺激有三种反应模式:以动作电位爆发做出反应的神经元(大多数);以迭代爆发做出反应的神经元;主要以放电抑制做出反应的神经元。通常,最初的兴奋性反应之后是放电率的下降。诱发电位分析表明,海马下脚的输入在伏隔核内诱发一个单极正电场;结合从电流源密度(CSD)分析获得的证据,这些数据提示了以下激活模型:海马下脚的输入引起星状神经元树突外周突触的去极化,引发外周电汇,其在细胞体及其附近的电源周围形成一个同心壳。除了海马下脚 - 伏隔核通路外,还获得了内嗅皮质向伏隔核的兴奋性输入的证据。此外,从梨状前皮质到嗅结节的兴奋性通路也通过电生理方法得以确定。(摘要截取自250词)

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